Experiments on two-phase flow in hydraulic jump on pebbled rough bed: Part 1–Turbulence properties and particle chord time and length

IF 3.7 Q1 WATER RESOURCES
Farhad Bahmanpouri , Carlo Gualtieri , Hubert Chanson
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引用次数: 1

Abstract

This study reported and discussed turbulence characteristics, such as turbulence intensity, correlation time scales, and advective length scales. The characteristic air–water time scale, including the particle chord time and length and their probability density functions (PDFs), was investigated. The results demonstrated that turbulence intensity was relatively greater on a rough bed in the roller length, whereas further downstream, the decay rate was higher. In addition, the relationship between turbulence intensity and dimensionless bubble count rate reflected an increase in turbulence intensity associated with the number of entrained particles. Triple decomposition analysis (TDA) was performed to determine the contributions of slow and fast turbulent components. The TDA results indicated that, regardless of bed type and inflow conditions, the sum of the band-pass (Tu) and high-pass (Tu) filtered turbulence intensities was equal to the turbulence intensity of the raw signal data (Tu). Tu highlighted a higher turbulence intensity and larger vorticities on the rough bed for an identical inflow Froude number. Additional TDA results were presented in terms of the interfacial velocity, auto- and cross-correlation time scales, and longitudinal advection length scale, with the effects of low- and high-frequency signal components on each highlighted parameter. The analysis of the air chord time indicated an increase in the proportion of small bubbles moving downstream. The second part of this research focused on the basic properties of particle grouping and clustering.

卵石粗糙床上水力跳跃两相流实验:第一部分湍流特性与颗粒弦长和弦长
本文报道并讨论了湍流特性,如湍流强度、相关时间尺度和平流长度尺度。研究了空气-水特征时间尺度,包括粒子弦时间和弦长及其概率密度函数。结果表明,在辊长较粗的床层上,湍流强度相对较大,而越往下游,衰减率越高。此外,湍流强度与无量纲气泡计数率之间的关系反映了与夹带颗粒数量相关的湍流强度的增加。采用三重分解分析(TDA)确定了慢速和快速湍流分量的贡献。TDA结果表明,无论床层类型和入流条件如何,带通(Tu’)和高通(Tu″)滤波后的湍流强度之和等于原始信号数据的湍流强度(Tu)。图″强调,在相同的流入弗劳德数下,粗糙床上的湍流强度和涡度更高。在界面速度、自相关和相互相关时间尺度以及纵向平流长度尺度上给出了额外的TDA结果,以及低频和高频信号分量对每个突出参数的影响。对气弦时间的分析表明,小气泡向下游移动的比例增加。第二部分研究了粒子分组和聚类的基本性质。
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来源期刊
CiteScore
6.60
自引率
5.00%
发文量
573
审稿时长
50 weeks
期刊介绍: Water Science and Engineering journal is an international, peer-reviewed research publication covering new concepts, theories, methods, and techniques related to water issues. The journal aims to publish research that helps advance the theoretical and practical understanding of water resources, aquatic environment, aquatic ecology, and water engineering, with emphases placed on the innovation and applicability of science and technology in large-scale hydropower project construction, large river and lake regulation, inter-basin water transfer, hydroelectric energy development, ecological restoration, the development of new materials, and sustainable utilization of water resources.
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